CrossPowerLaw.H
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9 Copyright (C) 2017-2019 OpenCFD Ltd.
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26
27Class
28 Foam::viscosityModels::CrossPowerLaw
29
30Description
31 An incompressible Cross-Power law non-Newtonian viscosity model.
32
33SourceFiles
34 CrossPowerLaw.C
35
36\*---------------------------------------------------------------------------*/
37
38#ifndef CrossPowerLaw_H
39#define CrossPowerLaw_H
40
41#include "viscosityModel.H"
42#include "dimensionedScalar.H"
43#include "volFields.H"
44
45// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
46
47namespace Foam
48{
49namespace viscosityModels
50{
51
52/*---------------------------------------------------------------------------*\
53 Class CrossPowerLaw Declaration
54\*---------------------------------------------------------------------------*/
56class CrossPowerLaw
57:
58 public viscosityModel
59{
60 // Private data
61
62 dictionary CrossPowerLawCoeffs_;
63
65 dimensionedScalar nuInf_;
68
69
70protected:
71
72 // Protected data
75
76
77 // Protected Member Functions
78
79 //- Calculate and return the laminar viscosity
81
82
83public:
84
85 //- Runtime type information
86 TypeName("CrossPowerLaw");
87
88
89 // Constructors
90
91 //- Construct from components
93 (
94 const word& name,
96 const volVectorField& U,
98 );
99
100
101 //- Destructor
102 virtual ~CrossPowerLaw() = default;
103
104
105 // Member Functions
106
107 //- Return the laminar viscosity
108 virtual tmp<volScalarField> nu() const
109 {
110 return nu_;
111 }
112
113 //- Return the laminar viscosity for patch
114 virtual tmp<scalarField> nu(const label patchi) const
115 {
116 return nu_.boundaryField()[patchi];
117 }
118
119 //- Correct the laminar viscosity
120 virtual void correct()
121 {
122 nu_ = calcNu();
123 }
124
125 //- Read transportProperties dictionary
126 virtual bool read(const dictionary& viscosityProperties);
127};
128
129
130// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
131
132} // End namespace viscosityModels
133} // End namespace Foam
134
135// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
136
137#endif
138
139// ************************************************************************* //
surfaceScalarField & phi
const Boundary & boundaryField() const
Return const-reference to the boundary field.
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
A class for managing temporary objects.
Definition: tmp.H:65
An abstract base class for incompressible viscosityModels.
const dictionary & viscosityProperties() const
Return the phase transport properties dictionary.
An incompressible Cross-Power law non-Newtonian viscosity model.
Definition: CrossPowerLaw.H:58
virtual bool read(const dictionary &viscosityProperties)
Read transportProperties dictionary.
Definition: CrossPowerLaw.C:97
virtual ~CrossPowerLaw()=default
Destructor.
tmp< volScalarField > calcNu() const
Calculate and return the laminar viscosity.
Definition: CrossPowerLaw.C:54
TypeName("CrossPowerLaw")
Runtime type information.
virtual void correct()
Correct the laminar viscosity.
virtual tmp< volScalarField > nu() const
Return the laminar viscosity.
virtual tmp< scalarField > nu(const label patchi) const
Return the laminar viscosity for patch.
A class for handling words, derived from Foam::string.
Definition: word.H:68
U
Definition: pEqn.H:72
Namespace for OpenFOAM.
word name(const expressions::valueTypeCode typeCode)
A word representation of a valueTypeCode. Empty for INVALID.
Definition: exprTraits.C:59
#define TypeName(TypeNameString)
Declare a ClassName() with extra virtual type info.
Definition: typeInfo.H:73